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Articles 1081 - 1110 of 10780
Full-Text Articles in Entire DC Network
Circzfr/Ythdf3 Axis Drives Lymph Node Metastasis In Cervical Cancer Via Fasn Translation, Mingyi Zhou, Yan Gao, Yong Zhang, Lian He, Bo Gao, Yue Zhang, Francois X Claret, George A Calin, Danbo Wang
Circzfr/Ythdf3 Axis Drives Lymph Node Metastasis In Cervical Cancer Via Fasn Translation, Mingyi Zhou, Yan Gao, Yong Zhang, Lian He, Bo Gao, Yue Zhang, Francois X Claret, George A Calin, Danbo Wang
Faculty, Staff and Student Publications
Background: Lymph node metastasis is a key driver of poor outcomes in cervical cancer. However, the molecular mechanisms of circular RNAs (circRNAs) driving cervical cancer lymph node metastasis remain unclear.
Methods: We identified circZFR, fatty acid synthase (FASN) and YTH N6-methyladenosine RNA binding protein F3 (YTHDF3) protein expression in the cervical cancer patients with long and short disease-free survival (DFS). Functional experiments were performed to investigate the function of circZFR, FASN and YTHDF3 on cell migration and invasion. MeRIP-qPCR, RNA pulldown, RNA Immunoprecipitation (RIP), and Co-Immunoprecipitation (Co-IP) assays were executed to investigate the mechanism of circZFR regulating FASN protein expression. …
The Promise And Peril Of Comparing Fluorescence Lifetime In Biology Revealed By Simulations, Pingchuan Ma, Peter Chen, Scott Sternson, Yao Chen
The Promise And Peril Of Comparing Fluorescence Lifetime In Biology Revealed By Simulations, Pingchuan Ma, Peter Chen, Scott Sternson, Yao Chen
2020-Current year OA Pubs
Signaling dynamics are crucial in biological systems, and biosensor-based real-time imaging has revolutionized their analysis. Fluorescence lifetime imaging microscopy (FLIM) excels over the widely used fluorescence intensity imaging by allowing the measurement of absolute signal levels independent of sensor concentration. This capability enables the comparison of signaling dynamics across different animals, body regions, and timeframes. However, FLIM's advantage can be compromised by factors like autofluorescence in biological experiments. To address this, we introduce FLiSimBA, a flexible computational framework for realistic
Dexamethasone-Eluting Cochlear Implants Reduce Inflammation And Foreign Body Response In Human And Murine Cochleae, Muhammad Taifur Rahman, Keiko Hirose, Et Al.
Dexamethasone-Eluting Cochlear Implants Reduce Inflammation And Foreign Body Response In Human And Murine Cochleae, Muhammad Taifur Rahman, Keiko Hirose, Et Al.
2020-Current year OA Pubs
The inflammatory foreign body response (FBR) following cochlear implantation (CI) can negatively impact CI outcomes, including increased electrode impedances. This study aims to investigate the long-term efficacy of dexamethasone-eluting cochlear implant and locally delivered dexamethasone, a potent anti-inflammatory glucocorticoid, on the intracochlear FBR and electrical impedance post-implantation in a murine model. Preliminary impedance data in humans are also provided as a complement to the murine data to illustrate generalizability and reinforce implications related to clinical application. The left ears of CX3CR1
Gm-Csf Production By Immune Cells In Steady State And Autoimmune Neuroinflammation Mapped Using Fate Reporting Mice, Gholamreza Azizi, Javad Rasouli, Hamed Naziri, Michael V. Gonzalez, James Garifallou, Guang-Xian Zhang, Bogoljub Ciric, Abdolmohamad M. Rostami
Gm-Csf Production By Immune Cells In Steady State And Autoimmune Neuroinflammation Mapped Using Fate Reporting Mice, Gholamreza Azizi, Javad Rasouli, Hamed Naziri, Michael V. Gonzalez, James Garifallou, Guang-Xian Zhang, Bogoljub Ciric, Abdolmohamad M. Rostami
Department of Neurology Faculty Papers
INTRODUCTION: GM-CSF is a pro-inflammatory cytokine that promotes an inflammatory phenotype in myeloid cells. The extent and pattern of GM-CSF expression in immune cells have not been fully elucidated. Our goal was to advance this topic using novel GM-CSF reporter/fate reporter transgenic mice.
METHODS: We tracked ongoing and past GM-CSF expression in various immune cells from multiple organs, in steady-state and autoimmune inflammation of the central nervous system (CNS).
RESULTS: The GM-CSF expression patterns varied by cell type and organ, with CD4
DISCUSSION: These findings identified distinct GM-CSF cellular sources across organs, highlighting the transient nature of GM-CSF expression and …
Genomic Editing Of A Pathogenic Sequence Variant In Acta2 Rescues Multisystemic Smooth Muscle Dysfunction Syndrome In Mice, Qianqian Ding, Peiheng Gan, Zhisheng Xu, Hui Li, Lei Guo, Camryn Macdonald, Wei Tan, Efrain Sanchez-Ortiz, John R Mcanally, Yu Zhang, Dileep Karri, Lin Xu, Ning Liu, Eric N Olson
Genomic Editing Of A Pathogenic Sequence Variant In Acta2 Rescues Multisystemic Smooth Muscle Dysfunction Syndrome In Mice, Qianqian Ding, Peiheng Gan, Zhisheng Xu, Hui Li, Lei Guo, Camryn Macdonald, Wei Tan, Efrain Sanchez-Ortiz, John R Mcanally, Yu Zhang, Dileep Karri, Lin Xu, Ning Liu, Eric N Olson
Faculty, Staff and Student Publications
Background: Vascular smooth muscle cells (SMCs), the predominant cell type in the aortic wall, play a crucial role in maintaining aortic integrity, blood pressure, and cardiovascular function. Vascular SMC contractility and function depend on ACTA2 (smooth muscle α-actin 2). The pathogenic variant ACTA2 c.536G>A (p.R179H) causes multisystemic smooth muscle dysfunction syndrome, a severe disorder marked by widespread smooth muscle abnormalities, resulting in life-threatening aortic disease and high risk of early death from aneurysms or stroke. No effective treatments exist for multisystemic smooth muscle dysfunction syndrome.
Methods: To develop a comprehensive therapy for multisystemic smooth muscle dysfunction syndrome, we used …
Lipid-Laden Microglia: Characterization And Roles In Diseases, Jiani Xing, Takese Mckenzie, Jian Hu
Lipid-Laden Microglia: Characterization And Roles In Diseases, Jiani Xing, Takese Mckenzie, Jian Hu
Faculty, Staff and Student Publications
Microglia are resident phagocytes of the central nervous system that play an essential role in brain development and homeostasis. When the intracellular lipid content exceeds the metabolic capacity of microglia, lipid droplets accumulate, giving rise to a distinct population termed lipid-laden microglia (LLMs). LLMs have been implicated in various neuroinflammatory and neurodegenerative diseases, functioning as both regulators/indicators of inflammation and potential therapeutic targets. This review summarizes the current research on LLMs, focusing on disease-specific regulators and functions, protective roles, interactions with neighboring cells, and advances in diagnostic and analytical tools. We also discuss the blurred distinction between LLMs and macrophages, …
Therapeutic Targeting Of Syndecan-1 Axis Overcomes Acquired Resistance To Kras-Targeted Therapy In Gastrointestinal Cancers, Madelaine S Theardy, Mitsunobu Takeda, Alexey Sorokin, Shuaitong Chen, Zecheng Yang, Xiaofei Wang, Preeti Kanikarla, Oluwadara Coker, Phuoc Nguyen, Yongkun Wei, Jun Yao, Liang Yan, Yanqing Jin, Yiming Cai, Masakatsu Paku, Ziheng Chen, Kara Z Li, Francesca Citron, Hideo Tomihara, Sisi Gao, Angela K Deem, Jun Zhao, Huamin Wang, Samir Hanash, Ronald A Depinho, Anirban Maitra, Giulio F Draetta, Haoqiang Ying, Scott Kopetz, Wantong Yao
Therapeutic Targeting Of Syndecan-1 Axis Overcomes Acquired Resistance To Kras-Targeted Therapy In Gastrointestinal Cancers, Madelaine S Theardy, Mitsunobu Takeda, Alexey Sorokin, Shuaitong Chen, Zecheng Yang, Xiaofei Wang, Preeti Kanikarla, Oluwadara Coker, Phuoc Nguyen, Yongkun Wei, Jun Yao, Liang Yan, Yanqing Jin, Yiming Cai, Masakatsu Paku, Ziheng Chen, Kara Z Li, Francesca Citron, Hideo Tomihara, Sisi Gao, Angela K Deem, Jun Zhao, Huamin Wang, Samir Hanash, Ronald A Depinho, Anirban Maitra, Giulio F Draetta, Haoqiang Ying, Scott Kopetz, Wantong Yao
Faculty, Staff and Student Publications
The therapeutic benefit of recently developed mutant KRAS (KRAS∗) inhibitors remains limited by the rapid onset of resistance. Here, we aim to delineate mechanisms underlying acquired resistance and identify actionable targets for overcoming this clinical challenge. Previously, we identified syndecan-1 (SDC1) as a key effector for pancreatic cancer progression whose surface expression is driven by KRAS∗. By leveraging both pancreatic and colorectal cancer models, we show that surface SDC1 expression initially diminishes upon KRAS∗ inhibition but recovers in tumor cells that bypass KRAS∗ dependency. Mechanistically, we reveal that YAP1 activation drives the recovery of SDC1 surface localization to enhance macropinocytosis-mediated …
Trpc4 Regulates Limbic Behavior And Neuronal Development By Stabilizing Dendrite Branches Through Actomyosin-Driven Integrin Activation, Jaepyo Jeon, Travis I Moore, Insuk So, Marc Freichel, Veit Flockerzi, Lutz Birnbaumer, Michael X Zhu
Trpc4 Regulates Limbic Behavior And Neuronal Development By Stabilizing Dendrite Branches Through Actomyosin-Driven Integrin Activation, Jaepyo Jeon, Travis I Moore, Insuk So, Marc Freichel, Veit Flockerzi, Lutz Birnbaumer, Michael X Zhu
Faculty, Staff and Student Publications
Transient Receptor Potential Canonical 4 (TRPC4) channels have been implicated in multiple neurological functions, including anxiety and sociability. TRPC4 variants were also found in patients with autism. However, the contributions of TRPC4 to neurodevelopment remain undefined. Here, we show that neurobehavioral deficits appear early in young TRPC4 knockout (Trpc4−/−) mice immediately after weaning, manifesting as alterations in multiple, limbic-related behaviors, such as nesting, marble burying, burrowing, self-grooming, and social interactions. Hippocampal neurons of Trpc4−/− mice exhibit reduced dendritic arborization both in vivo and in vitro. Mechanistically, we found that TRPC4 expression in dendrites surged at the …
Corticotropin-Releasing Hormone Modulates Nrem Sleep Consolidation Through The Thalamic Reticular Nucleus, Loredana Cumpana, Olivia Zanoletti, Dinesh Kankanamge, Bryan Copits, Carmen Sandi, Simone Astori
Corticotropin-Releasing Hormone Modulates Nrem Sleep Consolidation Through The Thalamic Reticular Nucleus, Loredana Cumpana, Olivia Zanoletti, Dinesh Kankanamge, Bryan Copits, Carmen Sandi, Simone Astori
2020-Current year OA Pubs
Corticotropin-releasing hormone (CRH) is a peptide associated with stress and anxiety that acts as a potent modulator throughout the nervous system. The thalamic reticular nucleus (TRN) displays high expression of the CRH receptor 1 (CRHR1), but whether CRH modulates key TRN functions, such as sleep spindle rhythmogenesis, remained unexplored. Combining polysomnographic and photometric recordings in mice, we show that CRH release in TRN during non-rapid-eye movement sleep (NREMS) oscillates with a ~50-s periodicity, anti-correlating with sleep spindle dynamics. Optogenetic manipulations of CRH release in TRN modulated NREMS fragmentation through microarousals with corresponding changes in sigma and delta power. In ex-vivo …
Experience-Dependent Intrinsic Plasticity In Layer Iv Of Barrel Cortex At Whisking Onset, Molly C Shallow, Lucy Tian, Bryan T Higashikubo, Hudson Lin, Katheryn B Lefton, Siyu Chen, Joseph D Dougherty, Joe P Culver, Mary E Lambo, Keith B Hengen
Experience-Dependent Intrinsic Plasticity In Layer Iv Of Barrel Cortex At Whisking Onset, Molly C Shallow, Lucy Tian, Bryan T Higashikubo, Hudson Lin, Katheryn B Lefton, Siyu Chen, Joseph D Dougherty, Joe P Culver, Mary E Lambo, Keith B Hengen
2020-Current year OA Pubs
The development of motor control over sensory organs is a critical milestone, enabling active exploration and shaping of the sensory environment. Whether the onset of sensory organ motor control directly influences the development of corresponding sensory cortices remains unknown. Here, we confirm and exploit the late onset of whisking behavior in mice to address this question in the somatosensory system. Using ex vivo electrophysiology, we describe a transient increase in the intrinsic excitability of excitatory neurons in layer IV of the barrel cortex, which processes whisker input, immediately following the onset of active whisking on postnatal days 13 and 14. …
O-Glcnac Transferase Plays Dual Antiviral Roles By Integrating Innate Immunity And Lipid Metabolism, Hong Dong, Yong Zhang, Michael J Holtzman, Et Al.
O-Glcnac Transferase Plays Dual Antiviral Roles By Integrating Innate Immunity And Lipid Metabolism, Hong Dong, Yong Zhang, Michael J Holtzman, Et Al.
2020-Current year OA Pubs
Viral infection induces robust reprogramming of metabolic pathways in host cells. However, whether host metabolic enzymes detect viral components remains unknown. Our group and others previously identified O-GlcNAc transferase (OGT), an important glucose metabolic enzyme, as a crucial mediator of the antiviral immune responses. Here, by studying a mouse model with a catalytically impaired OGT, we discover a catalytic activity-independent function of OGT in restraining influenza A virus (IAV) infection in addition to its catalytic activity-dependent effect on MAVS-mediated antiviral immunity. Biochemical studies reveal a critical antiviral effect based on OGT interacting with IAV genomic RNA that requires its N-terminal …
Mechano-Signal Transduction Pathways Of The Diaphragmatic Muscle And Role Of Cytoskeleton, Junaith S Mohamed, Patricia S Pardo, Aladin M Boriek
Mechano-Signal Transduction Pathways Of The Diaphragmatic Muscle And Role Of Cytoskeleton, Junaith S Mohamed, Patricia S Pardo, Aladin M Boriek
Faculty, Staff and Students Publications
Mechanotransduction, also referred to as mechano-signal transduction, is a biophysical process wherein cells perceive and respond to mechanical stimuli by converting them into biochemical signals that initiate specific cellular responses. This mechanism is fundamental to the development and growth, and proper functioning of mechanically active tissues, such as the diaphragm-a respiratory muscle vital for breathing in mammals. In vivo, the diaphragm is subjected to transdiaphragmatic pressure, and therefore, its muscle fibers are subjected to mechanical forces not only in the direction of the muscle fibers but also in the direction transverse to the fibers. Previous research conducted in our laboratory …
Novel Neuroactive Steroid Analogs And Voltage-Dependent Blockers Of Cav3.2 Currents, B372 And Yx23, Are Effective Anti-Nociceptives With Diminished Sedative Properties In Intact Female Mice, Benjamin Volvovitz, Rakib Miah, Kibeom Park, Jae Hun Kim, Raul Vargas, Yuanjiang Xu, Mingxing Qian, Douglas F Covey, Slobodan M Todorovic, Vesna Jevtovic-Todorovic
Novel Neuroactive Steroid Analogs And Voltage-Dependent Blockers Of Cav3.2 Currents, B372 And Yx23, Are Effective Anti-Nociceptives With Diminished Sedative Properties In Intact Female Mice, Benjamin Volvovitz, Rakib Miah, Kibeom Park, Jae Hun Kim, Raul Vargas, Yuanjiang Xu, Mingxing Qian, Douglas F Covey, Slobodan M Todorovic, Vesna Jevtovic-Todorovic
2020-Current year OA Pubs
Although opioids are effective in treating pain, they cause serious side effects. The use of regional anesthesia, although effective in the perioperative period, may not be suitable if mobility and lack of numbness is desired. Hence, there is a clear need for novel pain therapies. Low-voltage activated (T-type) calcium channels (Ca
Sox2 Regulates Foregut Squamous Epithelial Homeostasis And Is Lost During Barrett's Esophagus Development, Ramon U. Jin, Yuanwei Xu, T. Mamie Lih, Yang-Zhe Huang, Toni M. Nittolo, Blake E. Sells, Olivia M. Dres, Jean S. Wang, Qing K. Li, Hui Zhang, Jason C. Mills
Sox2 Regulates Foregut Squamous Epithelial Homeostasis And Is Lost During Barrett's Esophagus Development, Ramon U. Jin, Yuanwei Xu, T. Mamie Lih, Yang-Zhe Huang, Toni M. Nittolo, Blake E. Sells, Olivia M. Dres, Jean S. Wang, Qing K. Li, Hui Zhang, Jason C. Mills
2020-Current year OA Pubs
Esophageal adenocarcinoma is increasingly prevalent and is thought to arise from Barrett's esophagus (BE), a metaplastic condition in which chronic acid and bile reflux transforms the esophageal squamous epithelium into a gastric-intestinal glandular mucosa. The molecular determinants driving this metaplasia are poorly understood. We developed a human BE organoid biobank that recapitulates BE's molecular heterogeneity. Bulk and single-cell transcriptomics, supported by patient tissue analysis, revealed that BE differentiation reflects a balance between SOX2 (foregut/esophageal) and CDX2 (hindgut/intestinal) transcription factors. Using squamous-specific inducible Sox2-KO (Krt5CreER/+ Sox2Δ/Δ ROSA26tdTomato/+) mice, we observed increased basal proliferation, reduced squamous differentiation, and expanded metaplastic glands at …
A Chronic Acinetobacter Baumannii Pneumonia Model To Study Long-Term Virulence Factors, Antibiotic Treatments, And Polymicrobial Infections, Clay D Jackson-Litteken, Gisela Di Venanzio, Manon Janet-Maitre, Ítalo A Castro, Joseph J Mackel, Leslie D Wilson, David A Rosen, Carolina B López, Mario F Feldman
A Chronic Acinetobacter Baumannii Pneumonia Model To Study Long-Term Virulence Factors, Antibiotic Treatments, And Polymicrobial Infections, Clay D Jackson-Litteken, Gisela Di Venanzio, Manon Janet-Maitre, Ítalo A Castro, Joseph J Mackel, Leslie D Wilson, David A Rosen, Carolina B López, Mario F Feldman
2020-Current year OA Pubs
Acinetobacter baumannii causes prolonged infections that disproportionately affect immunocompromised populations. Our understanding of A. baumannii respiratory pathogenesis relies on an acute murine infection model with limited clinical relevance that employs an unnaturally high number of bacteria and requires assessment of bacterial load at 24-36 h post-infection. Here, we demonstrate that low intranasal inoculums in tlr4 mutant mice allows for infections lasting at least 3 weeks. Using this "chronic infection model" we determine the adhesin InvL is a virulence factor required during later stages of infection, despite being dispensable in the early phase. We also demonstrate that the chronic model enables …
Mathematical Modeling And Association Analysis Decipher The Impact Of The Gut Microbiome On Cancer Immunotherapy, Andreas G Hadjigeorgiou, Constantinos Harkos, Aditya K Mishra, Golnaz Morad, Sarah B Johnson, Nadim J Ajami, Jennifer A Wargo, Lance L Munn, Triantafyllos Stylianopoulos, Rakesh K Jain
Mathematical Modeling And Association Analysis Decipher The Impact Of The Gut Microbiome On Cancer Immunotherapy, Andreas G Hadjigeorgiou, Constantinos Harkos, Aditya K Mishra, Golnaz Morad, Sarah B Johnson, Nadim J Ajami, Jennifer A Wargo, Lance L Munn, Triantafyllos Stylianopoulos, Rakesh K Jain
Faculty, Staff and Student Publications
The gut microbiome has emerged as a key regulator of response to cancer immunotherapy. However, a better understanding of the underlying mechanisms by which the microbiome influences immunotherapy is needed to identify strategies to optimize outcomes. To this end, we developed a mathematical model to obtain insights into the effect of the microbiome on the immune system and immunotherapy response. This model was based on (i) gut microbiome data derived from preclinical studies, (ii) mathematical modeling of the antitumor immune response, (iii) association analysis of microbiome profiles with model-predicted immune profiles, and (iv) statistical models that correlate model parameters with …
Sox2 Regulates Foregut Squamous Epithelial Homeostasis And Is Lost During Barrett’S Esophagus Development, Ramon U Jin, Yuanwei Xu, T Mamie Lih, Yang-Zhe Huang, Toni M Nittolo, Blake E Sells, Olivia M Dres, Jean S Wang, Qing K Li, Hui Zhang, Jason C Mills
Sox2 Regulates Foregut Squamous Epithelial Homeostasis And Is Lost During Barrett’S Esophagus Development, Ramon U Jin, Yuanwei Xu, T Mamie Lih, Yang-Zhe Huang, Toni M Nittolo, Blake E Sells, Olivia M Dres, Jean S Wang, Qing K Li, Hui Zhang, Jason C Mills
Faculty, Staff and Students Publications
Esophageal adenocarcinoma is increasingly prevalent and is thought to arise from Barrett's esophagus (BE), a metaplastic condition in which chronic acid and bile reflux transforms the esophageal squamous epithelium into a gastric-intestinal glandular mucosa. The molecular determinants driving this metaplasia are poorly understood. We developed a human BE organoid biobank that recapitulates BE's molecular heterogeneity. Bulk and single-cell transcriptomics, supported by patient tissue analysis, revealed that BE differentiation reflects a balance between SOX2 (foregut/esophageal) and CDX2 (hindgut/intestinal) transcription factors. Using squamous-specific inducible Sox2-KO (Krt5CreER/+ Sox2Δ/Δ ROSA26tdTomato/+) mice, we observed increased basal proliferation, reduced squamous differentiation, and expanded metaplastic glands at …
Highly Oligomeric Drp1 Strategic Positioning At Mitochondria-Sarcoplasmic Reticulum Contacts In Adult Murine Heart Through Actin Anchoring, Celia Fernandez-Sanz, Sergio De La Fuente, Zuzana Nichtova, Marilen Federico, Stephane Duvezin-Caubet, Sebastian Lanvermann, Hui-Ying Tsai, Yanguo Xin, György Csordás, Wang Wang, Arnaud Mourier, Shey-Shing Sheu
Highly Oligomeric Drp1 Strategic Positioning At Mitochondria-Sarcoplasmic Reticulum Contacts In Adult Murine Heart Through Actin Anchoring, Celia Fernandez-Sanz, Sergio De La Fuente, Zuzana Nichtova, Marilen Federico, Stephane Duvezin-Caubet, Sebastian Lanvermann, Hui-Ying Tsai, Yanguo Xin, György Csordás, Wang Wang, Arnaud Mourier, Shey-Shing Sheu
Department of Medicine Faculty Papers
Mitochondrial fission and fusion appear to be relatively infrequent in cardiac cells compared to other cell types; however, the proteins involved in these events are highly expressed in adult cardiomyocytes (ACM). Therefore, these proteins likely have additional non-canonical roles. We have previously shown that DRP1 not only participates in mitochondrial fission processes but also regulates mitochondrial bioenergetics in cardiac tissue. However, it is still unknown where the DRP1 that does not participate in mitochondrial fission is located and what its role is at those non-fission spots. Therefore, this manuscript will clarify whether oligomeric DRP1 is located at the SR–mitochondria interface, …
Multimodal Spatial Transcriptomic Characterization Of Mouse Kidney Injury And Repair, Qiao Xuanyuan, Haojia Wu, Hemalatha Sundaramoorthi, Pierre Isnard, Changfeng Chen, Waleed Rahmani, Benjamin D Humphreys
Multimodal Spatial Transcriptomic Characterization Of Mouse Kidney Injury And Repair, Qiao Xuanyuan, Haojia Wu, Hemalatha Sundaramoorthi, Pierre Isnard, Changfeng Chen, Waleed Rahmani, Benjamin D Humphreys
2020-Current year OA Pubs
The transition from acute kidney injury to chronic kidney disease is characterized by significant changes in the cellular composition and molecular interactions within the kidney. Utilizing high-resolution Xenium and whole transcriptome Visium spatial transcriptomics platforms, we analyze over a million cells on 12 male mouse kidneys across six stages of renal injury and repair. We define and validate 20 major kidney cell populations and delineate distinct cellular neighborhoods through this multimodal spatial analysis. We further reveal a specific fibro-inflammatory niche enriched in failed-repair proximal tubule cells, fibroblasts, and immune cells, with conserved neighborhood gene signatures across mouse and human. Within …
Genetic Deletion Of The Sodium Phosphate Cotransporter Napi2a Ameliorates Heart Failure In Mice, Hiroko Yamauchi-Sawada, Benjamin D Humphreys, Et Al.
Genetic Deletion Of The Sodium Phosphate Cotransporter Napi2a Ameliorates Heart Failure In Mice, Hiroko Yamauchi-Sawada, Benjamin D Humphreys, Et Al.
2020-Current year OA Pubs
Apical membrane sodium transporters in renal proximal tubules, such as sodium-glucose co-transporter 2, are attractive therapeutic targets for the treatment of heart failure (HF). Sodium-phosphate co-transporter 2a (NaPi2a) is predominantly expressed in the apical membrane of proximal tubular epithelia and functions to reabsorb filtered phosphate and sodium. It currently remains unclear whether the inhibition of NaPi2a attenuates HF. We found that NaPi2a deficiency improved the cardiac phenotypes of the HF models of transverse aortic constriction (TAC) and doxorubicin (Dox) cardiotoxicity. Natriuretic and phosphaturetic effects were observed in NaPi2a-KO mice under normal conditions, resulting in low serum phosphate and fibroblast growth …
Transcriptional Remodeling Shapes Therapeutic Vulnerability To Necroptosis In Acute Lymphoblastic Leukemia, Anna Saorin, Anna Dehler, Bartimée Galvan, Fabio Steffen, Marine Ray, Dong Lu, Xin Yu, James Kim, Aneta Drakul, Samanta Kisele, Jin Wang, Jean-Pierre Bourquin, Beat C Bornhauser
Transcriptional Remodeling Shapes Therapeutic Vulnerability To Necroptosis In Acute Lymphoblastic Leukemia, Anna Saorin, Anna Dehler, Bartimée Galvan, Fabio Steffen, Marine Ray, Dong Lu, Xin Yu, James Kim, Aneta Drakul, Samanta Kisele, Jin Wang, Jean-Pierre Bourquin, Beat C Bornhauser
Faculty, Staff and Students Publications
Insufficient eradication of cancer cells and survival of drug tolerant clones are major relapse driving forces. Underlying molecular mechanisms comprise activated prosurvival and antiapoptotic signaling, leading to insufficient apoptosis and drug resistance. The identification of programmed cell death pathways alternative to apoptosis opens up possibilities to antagonize apoptosis escape routes. We have earlier shown that acute lymphoblastic leukemia (ALL) harbors a distinct propensity to undergo cell death by receptor-interacting protein kinase 1 (RIPK1)-dependent necroptosis, activated by small-molecule second mitochondria-derived activators of caspase (SMAC) mimetics. Despite demonstrated safety and tolerability of SMAC mimetics in clinical trials, their efficacy as single agent …
Male Caregiving Experience Alters Hippocampal Neuroplasticity And Transcription Independent Of Reproduction In A Biparental Species., Maria E Colt, Priyanka Agarwal, Erica R Glasper, Heidi Fisher
Male Caregiving Experience Alters Hippocampal Neuroplasticity And Transcription Independent Of Reproduction In A Biparental Species., Maria E Colt, Priyanka Agarwal, Erica R Glasper, Heidi Fisher
Faculty Research 2025
In mammals, measurable changes in brain and behavior accompany the transition to parenthood. In the biparental California mouse, Peromyscus californicus, fathers experience enhanced neuroplasticity, including increased hippocampal dendritic spine density, reduced anxiety, and improved memory. Here, we first investigate whether siring offspring or pup interaction drives structural neuroplasticity in fathers and find that hippocampal spine density is positively associated with caregiving experience, even in the absence of reproduction. Next, we evaluate the transcriptional response to caregiving in the hippocampus of these males and identify 158 differentially expressed genes between fathers and non-fathers, many of which are associated with neurogenesis, neuronal …
Structural Insights Into Ssna1 Self-Assembly And Its Microtubule Binding For Centriole Maintenance, Lorenzo Agostini, Jason A Pfister, Nirakar Basnet, Jienyu Ding, Rui Zhang, Christian Biertümpfel, Kevin F O'Connell, Naoko Mizuno
Structural Insights Into Ssna1 Self-Assembly And Its Microtubule Binding For Centriole Maintenance, Lorenzo Agostini, Jason A Pfister, Nirakar Basnet, Jienyu Ding, Rui Zhang, Christian Biertümpfel, Kevin F O'Connell, Naoko Mizuno
2020-Current year OA Pubs
SSNA1 is a fibrillar protein involved in dynamic microtubule remodeling, including nucleation, co-polymerization, and microtubule branching. The underlying molecular mechanism has remained unclear due to a lack of structural information. Here, we determine the cryo-EM structure of C.elegans SSNA-1 at 4.55-Å resolution and evaluate its role in embryonic development. We find that SSNA-1 forms an anti-parallel coiled-coil, with self-assembly facilitated by an overhang of 16 C-terminal residues that form a triple-stranded helical junction. The microtubule-binding region is within the triple-stranded junction, suggesting that self-assembly of SSNA-1 creates hubs for effective microtubule interaction. Genetical analysis elucidates that SSNA-1 deletion significantly reduces …
Ribosome Deficiency Induces Salmonella Filamentation Within Host Cells, Zhihui Lyu, Cierra Wilson, Kalyn Weiss, Spencer Lewis, Kurt Fredrick, William Margolin, Jiqiang Ling
Ribosome Deficiency Induces Salmonella Filamentation Within Host Cells, Zhihui Lyu, Cierra Wilson, Kalyn Weiss, Spencer Lewis, Kurt Fredrick, William Margolin, Jiqiang Ling
Faculty, Staff and Student Publications
The ribosome is the central hub for protein synthesis and is heavily targeted by antibiotics. Ribosomal mutations, antibiotic treatment, and nutrient starvation can alter translational efficiency and lead to stressed cells. Ribosome deficiency plays a critical role in stress responses and disease progression; yet, how it affects bacteria-host interactions remains poorly understood. In this study, we show that a ribosome-deficient strain exhibits a surprising morphological change from rod shape to filamentous in Salmonella cells growing inside host macrophages. Such filamentation depends on an acidic condition within macrophages and in a defined medium mimicking macrophage conditions. Further genetic analyses revealed that …
Development Of Emerin Mrna Lipid Nanoparticles To Rescue Myogenic Differentiation., Nicholas Marano, Liza Elif Guner, Rachel S Riley, James M Holaska
Development Of Emerin Mrna Lipid Nanoparticles To Rescue Myogenic Differentiation., Nicholas Marano, Liza Elif Guner, Rachel S Riley, James M Holaska
Rowan-Virtua School of Osteopathic Medicine Departmental Research
Emery-Dreifuss muscular dystrophy 1 (EDMD1) arises from mutations in EMD. Most EDMD1 patients lack detectable emerin expression. They experience symptoms such as skeletal muscle wasting, joint contractures, and cardiac conduction defects. Currently, physicians rely on treating patient symptoms without addressing the underlying cause-lack of functional emerin protein. Thus, there is a need for therapeutic approaches that restore emerin protein expression to improve patient outcomes. One way would be to deliver emerin mRNA or protein directly to affected tissues to restore tissue homeostasis. Here, we evaluated the utility of lipid nanoparticles (LNPs) to deliver emerin mRNA to diseased cells. LNPs …
Bclaf1 Restrains Stress Responses In Hematopoietic Stem Cells To Support Expansion And Repopulation, Stephanie J Crowley, Wei Yang, Lynn S White, Jun Wu, Yanan Li, Haley Schmidt, Kyunghee Choi, Jeffrey A Magee, Jeffrey J Bednarski
Bclaf1 Restrains Stress Responses In Hematopoietic Stem Cells To Support Expansion And Repopulation, Stephanie J Crowley, Wei Yang, Lynn S White, Jun Wu, Yanan Li, Haley Schmidt, Kyunghee Choi, Jeffrey A Magee, Jeffrey J Bednarski
2020-Current year OA Pubs
Hematopoietic stem cells (HSCs) rapidly expand during fetal development and after stress. Here, we identify B-cell lymphoma-2-associated factor 1 (BCLAF1) as a regulator of HSC repopulation activity, with roles in the expansion of fetal HSCs and hematopoietic reconstitution after stem cell transplantation. Using mice with hematopoietic-specific and inducible deletion of Bclaf1, we find that BCLAF1 promotes fetal HSC development but is dispensable for the maintenance of adult HSCs at steady state. Loss of BCLAF1 in either fetal or adult HSCs significantly impairs their self-renewal and multilineage reconstitution activity after stem cell transplantation. Single-cell RNA sequencing of fetal hematopoietic progenitors reveals …
Non-Isolated Tetralogy Of Fallot (Tof+): Exome Sequencing Efficacy And Phenotypic Expansions, Julia Volpi, Xiaonan Zhao, Nichole Owen, Tia Evans, Muriel Holder-Espinasse, Nayana Lahiri, Eleanor Sherlock, Gemma Poke, Jeroen Breckpot, Koen Devriendt, Bjorn Cools, Alfredo Brusco, Giovanni Battista Ferrero, Enrico Grosso, Pradeep Vasudevan, Sara Loddo, Antonio Novelli, Maria Cristina Digilio, Aafke Engwerda, Marrit Hitzert, Alison Male, Lucy Bownass, Ruth Newbury-Ecob, Zosia Miedzybrodzka, Ruth Armstrong, Sally Ann Lynch, Gunnar Houge, Shiyi Xiong, Seema R Lalani, Jill A Rosenfeld, Pamela N Luna, Chad A Shaw, Daryl A Scott
Non-Isolated Tetralogy Of Fallot (Tof+): Exome Sequencing Efficacy And Phenotypic Expansions, Julia Volpi, Xiaonan Zhao, Nichole Owen, Tia Evans, Muriel Holder-Espinasse, Nayana Lahiri, Eleanor Sherlock, Gemma Poke, Jeroen Breckpot, Koen Devriendt, Bjorn Cools, Alfredo Brusco, Giovanni Battista Ferrero, Enrico Grosso, Pradeep Vasudevan, Sara Loddo, Antonio Novelli, Maria Cristina Digilio, Aafke Engwerda, Marrit Hitzert, Alison Male, Lucy Bownass, Ruth Newbury-Ecob, Zosia Miedzybrodzka, Ruth Armstrong, Sally Ann Lynch, Gunnar Houge, Shiyi Xiong, Seema R Lalani, Jill A Rosenfeld, Pamela N Luna, Chad A Shaw, Daryl A Scott
Faculty, Staff and Students Publications
Tetralogy of Fallot (TOF) is the most common cyanotic congenital heart defect (CHD). TOF may present in isolation or in conjunction with one or more non-cardiac congenital anomalies or neurodevelopmental disorders (TOF+). Uncertainty regarding the efficacy of various genetic testing strategies, and an incomplete understanding of the genetic causes of TOF+, may lead to hesitancy in recommending genetic testing, particularly, clinical exome sequencing (cES). Here, we analyzed cES data from 131 individuals with TOF+. A definitive or probable diagnosis was made for 31 individuals, yielding a diagnostic rate of 23.6% (31/131). One individual received three diagnoses. Commercially available CHD panels …
Extracellular Vesicles For Clinical Diagnostics: From Bulk Measurements To Single-Vesicle Analysis, Hai Linh Tran, Wenshu Zheng, David A Issadore, Hyungsoon Im, Yoon-Kyoung Cho, Yuanqing Zhang, Dingbin Liu, Yang Liu, Bo Li, Fei Liu, David Tai Wai Wong, Jiashu Sun, Kun Qian, Mei He, Meihua Wan, Yong Zeng, Ke Cheng, Tony Jun Huang, Daniel T Chiu, Luke P Lee, Lei Zheng, Andrew K Godwin, Raghu Kalluri, Steven A Soper, Tony Y Hu
Extracellular Vesicles For Clinical Diagnostics: From Bulk Measurements To Single-Vesicle Analysis, Hai Linh Tran, Wenshu Zheng, David A Issadore, Hyungsoon Im, Yoon-Kyoung Cho, Yuanqing Zhang, Dingbin Liu, Yang Liu, Bo Li, Fei Liu, David Tai Wai Wong, Jiashu Sun, Kun Qian, Mei He, Meihua Wan, Yong Zeng, Ke Cheng, Tony Jun Huang, Daniel T Chiu, Luke P Lee, Lei Zheng, Andrew K Godwin, Raghu Kalluri, Steven A Soper, Tony Y Hu
Faculty, Staff and Student Publications
Extracellular vesicles (EVs) play a crucial role in intercellular communication, signaling pathways, and disease pathogenesis by transporting biomolecules such as DNA, RNA, proteins, and lipids derived from their cells of origin, and they have demonstrated substantial potential in clinical applications. Their clinical significance underscores the need for sensitive methods to fully harness their diagnostic potential. In this comprehensive review, we explore EV heterogeneity related to biogenesis, structure, content, origin, sample type, and function roles; the use of EVs as disease biomarkers; and the evolving landscape of EV measurement for clinical diagnostics, highlighting the progression from bulk measurement to single vesicle …
Hippocampal Avoidance During Prophylactic Cranial Irradiation For Patients With Small Cell Lung Cancer: Randomized Phase Ii/Iii Trial Nrg-Cc003, Vinai Gondi, Stephanie L Pugh, Minesh P Mehta, Jeffrey S Wefel, Wolfgang A Tomé, Alexander Y Sun, John Grecula, Kristin J Redmond, Shannon Fogh, Laurie Gaspar, Andre Konski, Joseph Bovi, Clifford G Robinson, Benjamin Corn, Gregory M Videtic, Benjamin H Lok, Harold A Yoon, John H Heinzerling, Albert S Denittis, Ronald C Mcgarry, Kiran Devisetty, Vijayananda Kundapur, Abraham J Wu, Edward C Mccarron, Isabelle Thibault, Edmund L Simon, Andrew M Baschnagel, Samir Narayan, Jondavid Pollock, Rebecca Paulus, Lisa A Kachnic
Hippocampal Avoidance During Prophylactic Cranial Irradiation For Patients With Small Cell Lung Cancer: Randomized Phase Ii/Iii Trial Nrg-Cc003, Vinai Gondi, Stephanie L Pugh, Minesh P Mehta, Jeffrey S Wefel, Wolfgang A Tomé, Alexander Y Sun, John Grecula, Kristin J Redmond, Shannon Fogh, Laurie Gaspar, Andre Konski, Joseph Bovi, Clifford G Robinson, Benjamin Corn, Gregory M Videtic, Benjamin H Lok, Harold A Yoon, John H Heinzerling, Albert S Denittis, Ronald C Mcgarry, Kiran Devisetty, Vijayananda Kundapur, Abraham J Wu, Edward C Mccarron, Isabelle Thibault, Edmund L Simon, Andrew M Baschnagel, Samir Narayan, Jondavid Pollock, Rebecca Paulus, Lisa A Kachnic
Faculty, Staff and Student Publications
Purpose: Hippocampal avoidance (HA) during therapeutic whole-brain radiotherapy reduces the risk of neurocognitive function (NCF) toxicity in patients with brain metastasis. This trial hypothesized that HA during prophylactic cranial irradiation (PCI) in patients with small cell lung cancer (SCLC) leads to noninferior intracranial relapse (ICR) and reduction in NCF toxicity.
Methods: This randomized phase II/III trial enrolled patients with SCLC, no brain metastases, and response to chemotherapy. The primary end points were 12-month ICR (noninferiority design, randomized phase II) and 6-month Hopkins Verbal Learning Test-Revised (HVLT-R) Delayed Recall (DR) failure (phase III). Secondary end points were failure in any NCF …
Keap1 And Stk11/Lkb1 Alterations Enhance Vulnerability To Atr Inhibition In Kras Mutant Non-Small Cell Lung Cancer, Ana Galan-Cobo, Natalie I Vokes, Yu Qian, David Molkentine, Kavya Ramkumar, Alvaro G Paula, Marlese Pisegna, Daniel J Mcgrail, Alissa Poteete, Sungnam Cho, Minh Truong Do, Amirali Karimi, Yifan Kong, Anisha Solanki, Ankur Karmokar, Nicolas Floc'h, Adina Hughes, Rebecca Sargeant, Lucy Young, Li Shen, Gozde Kar, Caezaan Keshvani, Claudio Arrechedera, Sharia Hernandez, Katharina Schlacher, Jing Wang, Sonia Iyer, James Conway, Mohamed Reda Keddar, Marta Milo, Ilario De Toma, Susan E Critchlow, J Carl Barrett, Jan Cosaert, Alan Lau, Viia Valge-Archer, Lauren A Byers, Simon T Barry, John V Heymach
Keap1 And Stk11/Lkb1 Alterations Enhance Vulnerability To Atr Inhibition In Kras Mutant Non-Small Cell Lung Cancer, Ana Galan-Cobo, Natalie I Vokes, Yu Qian, David Molkentine, Kavya Ramkumar, Alvaro G Paula, Marlese Pisegna, Daniel J Mcgrail, Alissa Poteete, Sungnam Cho, Minh Truong Do, Amirali Karimi, Yifan Kong, Anisha Solanki, Ankur Karmokar, Nicolas Floc'h, Adina Hughes, Rebecca Sargeant, Lucy Young, Li Shen, Gozde Kar, Caezaan Keshvani, Claudio Arrechedera, Sharia Hernandez, Katharina Schlacher, Jing Wang, Sonia Iyer, James Conway, Mohamed Reda Keddar, Marta Milo, Ilario De Toma, Susan E Critchlow, J Carl Barrett, Jan Cosaert, Alan Lau, Viia Valge-Archer, Lauren A Byers, Simon T Barry, John V Heymach
Faculty, Staff and Student Publications
KRAS mutations frequently co-occur with alterations in STK11/LKB1 and/or KEAP1, defining an aggressive subset of lung cancers resistant to immuno- and chemotherapy. While LKB1 loss is associated with vulnerability to DNA damage response-based therapies, the impact of KEAP1 alterations remains unknown. We demonstrate that KEAP1-NRF2 pathway drives a compensatory modulation of ATR-CHK1 signaling, enhancing vulnerability to ATR inhibitors (ATRi), particularly in the setting of increased replication stress associated with LKB1 loss. ATRi shows enhanced anti-tumor activity in LKB1 and/or KEAP1-deficient non-small cell lung cancer (NSCLC) models and synergizes with gemcitabine. ATRi also enhances antitumor immunity and mitigates the immunosuppressed phenotype …